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增殖细胞核抗原将细胞周期蛋白依赖性激酶抑制剂Xic1招募至DNA,并将其蛋白水解与DNA聚合酶转换偶联起来。

Proliferating cell nuclear antigen recruits cyclin-dependent kinase inhibitor Xic1 to DNA and couples its proteolysis to DNA polymerase switching.

作者信息

Chuang Li-Chiou, Yew P Renee

机构信息

University of Texas Health Science Center at San Antonio, Department of Molecular Medicine, Institute of Biotechnology, San Antonio, Texas 78245-3207, USA.

出版信息

J Biol Chem. 2005 Oct 21;280(42):35299-309. doi: 10.1074/jbc.M506429200. Epub 2005 Aug 23.

Abstract

The Xenopus cyclin-dependent kinase (CDK) inhibitor, p27(Xic1) (Xic1), binds to CDK2-cyclins and proliferating cell nuclear antigen (PCNA), inhibits DNA synthesis in Xenopus extracts, and is targeted for ubiquitin-mediated proteolysis. Previous studies suggest that Xic1 ubiquitination and degradation are coupled to the initiation of DNA replication, but the precise timing and molecular mechanism of Xic1 proteolysis has not been determined. Here we demonstrate that Xic1 proteolysis is temporally restricted to late replication initiation following the requirements for DNA polymerase alpha-primase, replication factor C, and PCNA. Our studies also indicate that Xic1 degradation is absolutely dependent upon the binding of Xic1 to PCNA in both Xenopus egg and gastrulation stage extracts. Additionally, extracts depleted of PCNA do not support Xic1 proteolysis. Importantly, while the addition of recombinant wild-type PCNA alone restores Xic1 degradation, the addition of a PCNA mutant defective for trimer formation does not restore Xic1 proteolysis in PCNA-depleted extracts, suggesting Xic1 proteolysis requires both PCNA binding to Xic1 and the ability of PCNA to be loaded onto primed DNA by replication factor C. Taken together, our studies suggest that Xic1 is targeted for ubiquitination and degradation during DNA polymerase switching through its interaction with PCNA at a site of initiation.

摘要

非洲爪蟾细胞周期蛋白依赖性激酶(CDK)抑制剂p27(Xic1)(Xic1)与CDK2 - 细胞周期蛋白及增殖细胞核抗原(PCNA)结合,抑制非洲爪蟾提取物中的DNA合成,并成为泛素介导的蛋白水解的靶点。先前的研究表明,Xic1的泛素化和降解与DNA复制的起始相关,但Xic1蛋白水解的确切时间和分子机制尚未确定。在这里,我们证明Xic1蛋白水解在时间上被限制在DNA聚合酶α - 引发酶、复制因子C和PCNA需求之后的晚期复制起始阶段。我们的研究还表明,在非洲爪蟾卵和原肠胚期提取物中,Xic1的降解绝对依赖于Xic1与PCNA的结合。此外,耗尽PCNA的提取物不支持Xic1蛋白水解。重要的是,虽然单独添加重组野生型PCNA可恢复Xic1降解,但添加对三聚体形成有缺陷的PCNA突变体并不能在耗尽PCNA的提取物中恢复Xic1蛋白水解,这表明Xic1蛋白水解既需要PCNA与Xic1结合,也需要PCNA通过复制因子C加载到引发的DNA上的能力。综上所述,我们的研究表明,在DNA聚合酶转换过程中,Xic1通过在起始位点与PCNA相互作用而成为泛素化和降解的靶点。

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